Revisiting the sphaleron and axion production rates in QCD at high temperatures
arXiv:2604.07256 · doi:10.1103/6t1x-trw7
Abstract
We report our new lattice results for the sphaleron rate calculated within a thermal effective field theory of soft SU(N) gluons whose momenta are below the magnetic scale, where , for a wide range of temperatures spanning from to GeV at sufficiently large volumes. Comparing these results with sphaleron rates in a nonthermal SU(N) plasma where the infrared gluons are overoccupied, we estimate the typical thermalization time for these ultrasoft gluons during the early stages of reheating after inflation. We also calculate the thermal production rate of relativistic axions due to these non-perturbatively interacting soft gluons which shows a significant deviation from its perturbative estimate even at the electroweak scale.
v3: published version
References in corpus (16)
- The Standard Model Higgs boson as the inflaton
- The Color Glass Condensate
- Towards a precision calculation of in the Standard Model II: Neutrino decoupling in the presence of flavour oscillations and finite-temperature QED
- Neutrino decoupling including flavour oscillations and primordial nucleosynthesis
- A precision calculation of relic neutrino decoupling
- The Sphaleron Rate in SU(N) Gauge Theory
- Thermal axion production in the primordial quark-gluon plasma
- Chaotic behavior in classical Yang-Mills dynamics
- Energy Spectrum of Thermalizing High Energy Decay Products in the Early Universe
- Chiral Magnetic Effect in Heavy Ion Collisions: The Present and Future
- Thermalization of non-abelian gauge theories at next-to-leading order
- The Secret Higgstory of the Highest Temperature during Reheating
- Breakdown of hydrodynamics from holographic pole collision
- Understanding thermalization in a non-Abelian gauge theory in terms of its soft modes
- Equivalence in virtual transitions between uniformly accelerated and static atoms: from a bird's eye
- Energy and momentum dependence of the soft-axion interaction rate